IGF-I increases bone marrow contribution to adult skeletal muscle and enhances the fusion of myelomonocytic precursors

被引:48
作者
Sacco, A
Doyonnas, R
LaBarge, MA
Hammer, MM
Kraft, P
Blau, HM [1 ]
机构
[1] Stanford Univ, Sch Med, Dept Mol Pharmacol, Stanford, CA 94305 USA
[2] Stanford Univ, Sch Med, Dept Microbiol & Immunol, Baxter Lab Genet Pharmacol, Stanford, CA 94305 USA
关键词
D O I
10.1083/jcb.200506123
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Muscle damage has been shown to enhance the contribution of bone marrow - derived cells ( BMDCs) to regenerating skeletal muscle. One responsible cell type involved in this process is a hematopoietic stem cell derivative, the myelomonocytic precursor (MMC). However, the molecular components responsible for this injury-related response remain largely unknown. In this paper, we show that delivery of insulin-like growth factor I (IGF-I) to adult skeletal muscle by three different methods - plasmid electroporation, injection of genetically engineered myoblasts, and recombinant protein injection - increases the integration of BMDCs up to fourfold. To investigate the underlying mechanism, we developed an in vitro fusion assay in which co-cultures of MMCs and myotubes were exposed to IGF-I. The number of fusion events was substantially augmented by IGF-I, independent of its effect on cell survival. These results provide novel evidence that a single factor, IGF-I, is sufficient to enhance the fusion of bone marrow derivatives with adult skeletal muscle.
引用
收藏
页码:483 / 492
页数:10
相关论文
共 69 条
[1]   SYSTEMIC DELIVERY OF RECOMBINANT PROTEINS BY GENETICALLY MODIFIED MYOBLASTS [J].
BARR, E ;
LEIDEN, JM .
SCIENCE, 1991, 254 (5037) :1507-1509
[2]   Viral mediated expression of insulin-like growth factor I blocks the aging-related loss of skeletal muscle function [J].
Barton-Davis, ER ;
Shoturma, DI ;
Musaro, A ;
Rosenthal, N ;
Sweeney, HL .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1998, 95 (26) :15603-15607
[3]   SEQUENCES OF LIVER CDNAS ENCODING 2 DIFFERENT MOUSE INSULIN-LIKE GROWTH FACTOR-I PRECURSORS [J].
BELL, GI ;
STEMPIEN, MM ;
FONG, NM ;
RALL, LB .
NUCLEIC ACIDS RESEARCH, 1986, 14 (20) :7873-7882
[4]   Muscle electrotransfer as a tool for studying muscle fiber-specific and nerve-dependent activity of promoters [J].
Bertrand, A ;
Ngô-Muller, V ;
Hentzen, D ;
Concordet, JP ;
Daegelen, D ;
Tuil, D .
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 2003, 285 (05) :C1071-C1081
[5]   Recruitment of bone-marrow-derived cells by skeletal and cardiac muscle in adult dystrophic mdx mice [J].
Bittner, RE ;
Schöfer, C ;
Weipoltshammer, K ;
Ivanova, S ;
Streubel, B ;
Hauser, E ;
Freilinger, M ;
Höger, H ;
Elbe-Bürger, A ;
Wachtler, F .
ANATOMY AND EMBRYOLOGY, 1999, 199 (05) :391-396
[6]   Optimizing techniques for tracking transplanted stem cells in vivo [J].
Brazelton, TR ;
Blau, HM .
STEM CELLS, 2005, 23 (09) :1251-1265
[7]   Significant differences among skeletal muscles in the incorporation of bone marrow-derived cells [J].
Brazelton, TR ;
Nystrom, M ;
Blau, HM .
DEVELOPMENTAL BIOLOGY, 2003, 262 (01) :64-74
[8]   Insulin-like growth factor-I and the cytokines IL-3 and IL-4 promote survival of progenitor myeloid cells by different mechanisms [J].
Burgess, W ;
Jesse, K ;
Tang, QS ;
Broussard, SR ;
Dantzer, R ;
Kelley, KW .
JOURNAL OF NEUROIMMUNOLOGY, 2003, 135 (1-2) :82-90
[9]   Single hematopoietic stem cells generate skeletal muscle through myeloid intermediates [J].
Camargo, FD ;
Green, R ;
Capetenaki, Y ;
Jackson, KA ;
Goodell, MA .
NATURE MEDICINE, 2003, 9 (12) :1520-1527
[10]   Unveiling the mechanisms of cell-cell fusion [J].
Chen, EH ;
Olson, EN .
SCIENCE, 2005, 308 (5720) :369-373